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Effect of Microstructural Anisotropy on Mechanical Behavior of a High-Strength Al-Mg-Si Alloy

机译:微观结构各向异性对高强度Al-Mg-Si合金力学行为的影响

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摘要

The mechanical behavior of an extruded aluminum alloy pipe has been investigated after repeated failures in an oil and gas industry. The pipe failures occurred by longitudinal cracking, and the mechanical properties of the pipe were blamed for the failure. The relevant critical properties of the pipe including basic tests of hardness, tensile, and impact behavior were measured, and extended fatigue testing of the material was conducted. Microstructural examination revealed a recrystallized grain structure and clusters of constituent particles aligned in the direction of extrusion. Tensile testing in both the longitudinal and circumferential directions showed virtually identical yield and tensile strengths. However, the material exhibited higher toughness in the longitudinal direction. Impact test showed that the energy absorbed during fracture was four times higher in the longitudinal direction. Fatigue testing displayed a shorter fatigue life in the transverse direction. The study showed that the micro-structure after extrusion and the distribution of the constituent particles have a pronounced effect on the mechanical behavior of the extruded pipe and induced anisotropy in the material performance. Performance of the material can be improved by choosing the proper extrusion ratio to control the microstructure and by controlling the density and distribution of the constituent particles.
机译:在石油和天然气工业中屡屡发生故障后,已对铝合金挤压管的机械性能进行了研究。管道的故障是由纵向裂纹引起的,因此应归咎于管道的机械性能。测量了管道的相关关键性能,包括硬度,拉伸和冲击性能的基本测试,并对材料进行了扩展的疲劳测试。显微组织检查显示出再结晶的晶粒结构和沿挤出方向排列的组成颗粒簇。在纵向和圆周方向上的拉伸测试显示出几乎相同的屈服强度和拉伸强度。但是,该材料在纵向上显示出较高的韧性。冲击试验表明,断裂过程中吸收的能量在纵向上高四倍。疲劳测试显示,其横向疲劳寿命较短。研究表明,挤压后的微观结构和组成颗粒的分布对挤压管材的力学行为具有显着影响,并在材料性能中引起各向异性。通过选择适当的挤出比以控制微观结构并控制组成颗粒的密度和分布,可以提高材料的性能。

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